Biofilms in Bioelectrochemical Systems

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Publisher : John Wiley & Sons
ISBN 13 : 1118413490
Total Pages : 428 pages
Book Rating : 4.1/5 (184 download)

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Book Synopsis Biofilms in Bioelectrochemical Systems by : Haluk Beyenal

Download or read book Biofilms in Bioelectrochemical Systems written by Haluk Beyenal and published by John Wiley & Sons. This book was released on 2015-10-05 with total page 428 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book serves as a manual of research techniques for electrochemically active biofilm research. Using examples from real biofilm research to illustrate the techniques used for electrochemically active biofilms, this book is of most use to researchers and educators studying microbial fuel cell and bioelectrochemical systems. The book emphasizes the theoretical principles of bioelectrochemistry, experimental procedures and tools useful in quantifying electron transfer processes in biofilms, and mathematical modeling of electron transfer in biofilms. It is divided into three sections: Biofilms: Microbiology and microbioelectrochemistry - Focuses on the microbiologic aspect of electrochemically active biofilms and details the key points of biofilm preparation and electrochemical measurement Electrochemical techniques to study electron transfer processes - Focuses on electrochemical characterization and data interpretation, highlighting key factors in the experimental procedures that affect reproducibility Applications - Focuses on applications of electrochemically active biofilms and development of custom tools to study electrochemically active biofilms. Chapters detail how to build the reactors for applications and measure parameters

Bioelectrochemical Systems

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Publisher : IWA Publishing
ISBN 13 : 184339233X
Total Pages : 525 pages
Book Rating : 4.8/5 (433 download)

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Book Synopsis Bioelectrochemical Systems by : Korneel Rabaey

Download or read book Bioelectrochemical Systems written by Korneel Rabaey and published by IWA Publishing. This book was released on 2009-12-01 with total page 525 pages. Available in PDF, EPUB and Kindle. Book excerpt: In the context of wastewater treatment, Bioelectrochemical Systems (BESs) have gained considerable interest in the past few years, and several BES processes are on the brink of application to this area. This book, written by a large number of world experts in the different sub-topics, describes the different aspects and processes relevant to their development. Bioelectrochemical Systems (BESs) use micro-organisms to catalyze an oxidation and/or reduction reaction at an anodic and cathodic electrode respectively. Briefly, at an anode oxidation of organic and inorganic electron donors can occur. Prime examples of such electron donors are waste organics and sulfides. At the cathode, an electron acceptor such as oxygen or nitrate can be reduced. The anode and the cathode are connected through an electrical circuit. If electrical power is harvested from this circuit, the system is called a Microbial Fuel Cell; if electrical power is invested, the system is called a Microbial Electrolysis Cell. The overall framework of bio-energy and bio-fuels is discussed. A number of chapters discuss the basics – microbiology, microbial ecology, electrochemistry, technology and materials development. The book continues by highlighting the plurality of processes based on BES technology already in existence, going from wastewater based reactors to sediment based bio-batteries. The integration of BESs into existing water or process lines is discussed. Finally, an outlook is provided of how BES will fit within the emerging biorefinery area.

Bioelectrochemical Systems

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Author :
Publisher : Springer Nature
ISBN 13 : 9811568723
Total Pages : 333 pages
Book Rating : 4.8/5 (115 download)

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Book Synopsis Bioelectrochemical Systems by : Prasun Kumar

Download or read book Bioelectrochemical Systems written by Prasun Kumar and published by Springer Nature. This book was released on 2021-02-02 with total page 333 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is the first in a two-volume set devoted to bioelectrochemical systems (BESs) and the opportunities that they may offer in providing a green solution to growing energy demands worldwide. In this first volume, established research professionals explain the underlying principles and processes of BESs, providing a thorough introduction to these systems before proceeding to address the roles of cathode catalysts and biocatalysts, biofilms, heterotrophic denitrification, and nanotechnology approaches. This volume forms a sound foundation for understanding the potential industrial applications of this technology, which include in particular the generation of high-value chemicals and energy using organic wastes. These applications are the focus of the second volume, where readers will find up-to-date information on microbial fuel cells and the use of microbial biofilm- and algae-based bioelectrochemical systems for bioremediation and co-generation of valuable chemicals. The book is designed for a broad audience, including undergraduates, postgraduates, energy researchers/scientists, policymakers, and anyone else interested in the latest developments in this field.

Bioelectrochemical Systems

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Publisher : Springer Nature
ISBN 13 : 9811568685
Total Pages : 401 pages
Book Rating : 4.8/5 (115 download)

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Book Synopsis Bioelectrochemical Systems by : Prasun Kumar

Download or read book Bioelectrochemical Systems written by Prasun Kumar and published by Springer Nature. This book was released on 2021-02-08 with total page 401 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is the second in a two-volume set devoted to bioelectrochemical systems (BESs) and the opportunities that they may offer in providing a green solution to growing energy demands worldwide. While the first volume explains principles and processes, in this volume established research professionals shed light on how this technology can be used to generate high-value chemicals and energy using organic wastes. Bioelectricity is generated in microbial fuel cells (MFCs) under oxygen-depleted conditions, where microbial bioconversion reactions transform organic wastes into electrons. Dedicated chapters focus on MFCs and state of the art advancements as well as current limitations. In addition, the book covers the use of microbial biofilm- and algae-based bioelectrochemical systems for bioremediation and co-generation of valuable chemicals. A thorough review of the performance of this technology and its possible industrial applications is presented. The book is designed for a broad audience, including undergraduates, postgraduates, energy researchers/scientists, policymakers, and anyone else interested in the latest developments in this field.

Biofilms in Bioelectrochemical Systems

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Author :
Publisher : John Wiley & Sons
ISBN 13 : 1119097436
Total Pages : 428 pages
Book Rating : 4.1/5 (19 download)

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Book Synopsis Biofilms in Bioelectrochemical Systems by : Haluk Beyenal

Download or read book Biofilms in Bioelectrochemical Systems written by Haluk Beyenal and published by John Wiley & Sons. This book was released on 2015-09-09 with total page 428 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book serves as a manual of research techniques for electrochemically active biofilm research. Using examples from real biofilm research to illustrate the techniques used for electrochemically active biofilms, this book is of most use to researchers and educators studying microbial fuel cell and bioelectrochemical systems. The book emphasizes the theoretical principles of bioelectrochemistry, experimental procedures and tools useful in quantifying electron transfer processes in biofilms, and mathematical modeling of electron transfer in biofilms. It is divided into three sections: Biofilms: Microbiology and microbioelectrochemistry - Focuses on the microbiologic aspect of electrochemically active biofilms and details the key points of biofilm preparation and electrochemical measurement Electrochemical techniques to study electron transfer processes - Focuses on electrochemical characterization and data interpretation, highlighting key factors in the experimental procedures that affect reproducibility Applications - Focuses on applications of electrochemically active biofilms and development of custom tools to study electrochemically active biofilms. Chapters detail how to build the reactors for applications and measure parameters

Bacterial Biofilms

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Publisher : BoD – Books on Demand
ISBN 13 : 1789858992
Total Pages : 362 pages
Book Rating : 4.7/5 (898 download)

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Book Synopsis Bacterial Biofilms by : Sadik Dincer

Download or read book Bacterial Biofilms written by Sadik Dincer and published by BoD – Books on Demand. This book was released on 2020-10-07 with total page 362 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book examines biofilms in nature. Organized into four parts, this book addresses biofilms in wastewater treatment, inhibition of biofilm formation, biofilms and infection, and ecology of biofilms. It is designed for clinicians, researchers, and industry professionals in the fields of microbiology, biotechnology, ecology, and medicine as well as graduate and postgraduate students.

Fundamentals of Biofilm Research, Second Edition

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Publisher : CRC Press
ISBN 13 : 1466559594
Total Pages : 666 pages
Book Rating : 4.4/5 (665 download)

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Book Synopsis Fundamentals of Biofilm Research, Second Edition by : Zbigniew Lewandowski

Download or read book Fundamentals of Biofilm Research, Second Edition written by Zbigniew Lewandowski and published by CRC Press. This book was released on 2013-12-16 with total page 666 pages. Available in PDF, EPUB and Kindle. Book excerpt: The six years that have passed since the publication of the first edition have brought significant advances in both biofilm research and biofilm engineering, which have matured to the extent that biofilm-based technologies are now being designed and implemented. As a result, many chapters have been updated and expanded with the addition of sections reflecting changes in the status quo in biofilm research and engineering. Emphasizing process analysis, engineering systems, biofilm applications, and mathematical modeling, Fundamentals of Biofilm Research, Second Edition provides the tools to unify and advance biofilm research as a whole. Retaining the goals of the first edition, this second edition serves as: A compendium of knowledge about biofilms and biofilm processes A set of instructions for designing and conducting biofilm experiments A set of instructions for making and using various tools useful in biofilm research A set of computational procedures useful in interpreting results of biofilm research A set of instructions for using the model of stratified biofilms for data interpretation, analysis, and biofilm activity prediction

Microbial Biofilms

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Publisher : CRC Press
ISBN 13 : 1000215636
Total Pages : 520 pages
Book Rating : 4.0/5 (2 download)

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Book Synopsis Microbial Biofilms by : Bakrudeen Ali Ahmed Abdul

Download or read book Microbial Biofilms written by Bakrudeen Ali Ahmed Abdul and published by CRC Press. This book was released on 2020-11-05 with total page 520 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book provides a broad range of applications and recent advances in the search for biofilm materials in nature. It also explains the future implications for biofilms in the areas of advanced molecular genetics, pharmaceuticals, pharmacology, and toxicology. This book is comprised of 20 chapters from leading experts in the field and it examines immunology and microbiological studies derived from biofilms as well as explores environmental, agricultural, and chemical impacts on biofilms. It is divided into five subdivisions: biofilms and its complications, biofilm infections in human body, detection of biofilm-forming pathogens, antibiofilm chemotherapy, and biofilms production tools in aquaculture. This book may be used as a text or reference for everyone interested in microbial biofilms and their current applications. It is also highly recommended for environmental microbiologists, medical microbiologists, bioremediation experts, and microbiologists working in biocorrosion, biofouling, biodegradation, water microbiology, quorum sensing, and many other related areas. Scientists in academia, research laboratories, and industry will also find it of interest. This book includes chapter homework problems and case studies. Powerpoints are also available for adopting instructors. Discusses and clarifies the resource of isolation and chemical properties from biofilms Discusses the latest pharmaceutical, pharmacological, and medicinal approaches toward the treatment of chronic and uncured diseases, such as Alzheimer’s osteoporotic, sexual dysfunction, sleep sickness, allergy treatment, asthma, hair loss, AIDS, hypertension, antiaging, etc. Examines immunology and microbiological studies derived from biofilms Explores environmental, agricultural, and chemical impacts on biofilms. Dr. Bakrudeen Ali Ahmed Abdul is an Associate Professor, the Head of the Department of Biochemistry and Dean of the School of Life Sciences, Centre for Research and Development (CRD), PRIST Deemed University, Vallam, Thanjavur, Tamil Nadu, India. His research areas include the application of plant biochemistry, bioactive compound production, biotechnological methods, development of pharmaceutical products and pharmacological studies.

Toward Practical Implementation of Bioelectrochemical Technologies

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Publisher :
ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (134 download)

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Book Synopsis Toward Practical Implementation of Bioelectrochemical Technologies by : Abdelrhman Mohamed

Download or read book Toward Practical Implementation of Bioelectrochemical Technologies written by Abdelrhman Mohamed and published by . This book was released on 2019 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: The discovery of the ability of microorganisms to exchange electrons with inert electrodes - called electrochemically-active biofilms (EABs) - has triggered new areas in fundamental and applied research. However, advancements in the field have been limited by the scope of available technologies and techniques to study, control and scale up EABs. The overall goal of this dissertation was to address some of the bottlenecks limiting the implementation of bioelectrochemical systems in practical applications. This dissertation presents four examples of such bottlenecks. First, we evaluated field performance of sediment microbial fuel cells (SMFCs) using a novel autonomous, battery-operated device. This research allowed us to determine optimum conditions for energy harvesting from SMFCs constructed in Hot Lake, a remote hypersaline lake in northern Washington. Second, we extended this work to address the limited number of isolated microorganisms known to form EABs, which limits the number and diversity of metabolic traits accessible through microbial electrochemistry. This was done by performing long-term chronoamperometric enrichment in a remote area using a newly developed cost-effective battery-operated deployable potentiostat. We demonstrated its utility through the enrichment of microbial community in four alkaline hot springs in the Heart Lake Geyser Basin in Yellowstone National Park, Wyoming. Third, we addressed the limited strategies to control the potential of MFCs, especially when the reactor feed exhibits high daily and seasonal fluctuations in influent flow rate and characteristics, such as the case in MFCs treating real municipal wastewater. To address this, we developed a switchable dual mode system capable of treating wastewater in self-powered MFC mode as well as under potentiostatic control of anodes and cathodes. We demonstrated this system through the operation of a large laboratory scale reactor and pilot scale operated in a local municipal wastewater treatment plant. Lastly, we investigated the factors affecting the scale up of oxygen reducing cathodic biofilms. This addresses the practical challenges in scaling up bioelectrochemical systems, as previous literature documented a significant decrease in current density when increasing electrode surface area. Collectively, this dissertation presents novel technologies and techniques aimed toward expanding the scope and facilitating practical implementation of bioelectrochemical systems.

Microbial Fuel Cell

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Publisher : Springer
ISBN 13 : 3319667939
Total Pages : 508 pages
Book Rating : 4.3/5 (196 download)

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Book Synopsis Microbial Fuel Cell by : Debabrata Das

Download or read book Microbial Fuel Cell written by Debabrata Das and published by Springer. This book was released on 2017-12-01 with total page 508 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book represents a novel attempt to describe microbial fuel cells (MFCs) as a renewable energy source derived from organic wastes. Bioelectricity is usually produced through MFCs in oxygen-deficient environments, where a series of microorganisms convert the complex wastes into electrons via liquefaction through a cascade of enzymes in a bioelectrochemical process. The book provides a detailed description of MFC technologies and their applications, along with the theories underlying the electron transfer mechanisms, the biochemistry and the microbiology involved, and the material characteristics of the anode, cathode and separator. It is intended for a broad audience, mainly undergraduates, postgraduates, energy researchers, scientists working in industry and at research organizations, energy specialists, policymakers, and anyone else interested in the latest developments concerning MFCs.

Microbial Electrochemical Technologies

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Publisher : CRC Press
ISBN 13 : 0429944993
Total Pages : 497 pages
Book Rating : 4.4/5 (299 download)

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Book Synopsis Microbial Electrochemical Technologies by : Sonia M. Tiquia-Arashiro

Download or read book Microbial Electrochemical Technologies written by Sonia M. Tiquia-Arashiro and published by CRC Press. This book was released on 2020-01-06 with total page 497 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book encompasses the most updated and recent account of research and implementation of Microbial Electrochemical Technologies (METs) from pioneers and experienced researchers in the field who have been working on the interface between electrochemistry and microbiology/biotechnology for many years. It provides a holistic view of the METs, detailing the functional mechanisms, operational configurations, influencing factors governing the reaction process and integration strategies. The book not only provides historical perspectives of the technology and its evolution over the years but also the most recent examples of up-scaling and near future commercialization, making it a must-read for researchers, students, industry practitioners and science enthusiasts. Key Features: Introduces novel technologies that can impact the future infrastructure at the water-energy nexus. Outlines methodologies development and application of microbial electrochemical technologies and details out the illustrations of microbial and electrochemical concepts. Reviews applications across a wide variety of scales, from power generation in the laboratory to approaches. Discusses techniques such as molecular biology and mathematical modeling; the future development of this promising technology; and the role of the system components for the implementation of bioelectrochemical technologies for practical utility. Explores key challenges for implementing these systems and compares them to similar renewable energy technologies, including their efficiency, scalability, system lifetimes, and reliability.

Bioelectrosynthesis

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Publisher : Springer
ISBN 13 : 303003299X
Total Pages : 420 pages
Book Rating : 4.0/5 (3 download)

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Book Synopsis Bioelectrosynthesis by : Falk Harnisch

Download or read book Bioelectrosynthesis written by Falk Harnisch and published by Springer. This book was released on 2019-01-04 with total page 420 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume discusses both the latest experimental research in bioelectrosynthesis and current applications. Beginning with an introduction into the “electrification of biotechnology” as well as the underlying fundamentals, the volume then discusses a wide range of topics based on the interfacing of biotechnological and electrochemical reaction steps. It includes contributions on the different aspects of bioelectrochemical applications for synthesis purposes, i.e. the production of fine and platform chemicals based on enzymatically or microbially catalyzed reactions driven by electric energy. The volume finishes with a summary and outlook chapter which gives an overview of the current status of the field and future perspectives. Edited by experts in the field, and authored by a wide range of international researchers, this volume assesses how research from today’s lab bench can be developed into industrial applications, and is of interest to researchers in academia and industry.

Biofilms in Wastewater Treatment

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Publisher : IWA Publishing
ISBN 13 : 1843390078
Total Pages : 425 pages
Book Rating : 4.8/5 (433 download)

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Book Synopsis Biofilms in Wastewater Treatment by : Stefan Wuertz

Download or read book Biofilms in Wastewater Treatment written by Stefan Wuertz and published by IWA Publishing. This book was released on 2003-04-30 with total page 425 pages. Available in PDF, EPUB and Kindle. Book excerpt: The central theme of the book is the flow of information from experimental approaches in biofilm research to simulation and modeling of complex wastewater systems. Probably the greatest challenge in wastewater research lies in using the methods and the results obtained in one scientific discipline to design intelligent experiments in other disciplines, and eventually to improve the knowledge base the practitioner needs to run wastewater treatment plants. The purpose of Biofilms in Wastewater Treatment is to provide engineers with the knowledge needed to apply the new insights gained by researchers. The authors provide an authoritative insight into the function of biofilms on a technical and on a lab-scale, cover some of the exciting new basic microbiological and wastewater engineering research involving molecular biology techniques and microscopy, and discuss recent attempts to predict the development of biofilms. This book is divided into 3 sections: Modeling and Simulation; Architecture, Population Structure and Function; and From Fundamentals to Practical Application, which all start with a scientific question. Individual chapters attempt to answer the question and present different angles of looking at problems. In addition there is an extensive glossary to familiarize the non-expert with unfamiliar terminology used by microbiologists and computational scientists. The colour plate section of this book can be downloaded by clicking here. (PDF Format 1 MB)

Introduction to Biofilm Engineering

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Publisher :
ISBN 13 : 9780841234734
Total Pages : 320 pages
Book Rating : 4.2/5 (347 download)

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Book Synopsis Introduction to Biofilm Engineering by : Navanietha Krishnaraj Rathinam

Download or read book Introduction to Biofilm Engineering written by Navanietha Krishnaraj Rathinam and published by . This book was released on 2020-08-25 with total page 320 pages. Available in PDF, EPUB and Kindle. Book excerpt: "There is a growing demand for investigation of biofilm mechanisms in detail for the purpose of controlling diseases as well as for harnessing their potential for industrial biotechnology applications. Although biofilms have greater roles in disease biology and offer better yields than suspended cells in bioprocesses, little emphasis has placed on biofilms in several universities' curricula. This book aims to provide a basic understanding about biofilm formation, factors influencing biofilm formations, and engineering strategies for improving or inhibiting the growth of biofilms. This book will serve as course material for the undergraduate students, graduate students, and faculty who are interested in offering a course on biofilm engineering. This book covers techniques that are relevant to biofilm characterization, which will be helpful for the researchers to gain basic understanding about the subject"--

Microbial BioEnergy: Hydrogen Production

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Publisher : Springer
ISBN 13 : 9401785546
Total Pages : 390 pages
Book Rating : 4.4/5 (17 download)

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Book Synopsis Microbial BioEnergy: Hydrogen Production by : Davide Zannoni

Download or read book Microbial BioEnergy: Hydrogen Production written by Davide Zannoni and published by Springer. This book was released on 2014-07-08 with total page 390 pages. Available in PDF, EPUB and Kindle. Book excerpt: The central theme of this book “Microbial BioEnergy: Hydrogen Production” is focused on the biological machinery that microorganisms use to produce hydrogen gas. The book summarizes the achievements over the past decade in the biochemistry, structural and molecular biology, genomics and applied aspects of microbial H2-production, including microbial fuel cells (MFC), by phototrophs such as purple sulfur and non-sulfur bacteria (Thiocapsa spp., Rhodobacter and Rhodopseudomonas spp.) microalgae (Chlamydomonas) and cyanobacteria (Anabaena spp.) along with anaerobes and thermophiles such as Caldicellulosiruptor and Thermotoga. This is the first book of this series entirely devoted to microbial bio-hydrogen production and is intended to be a precious source of information for PhD students, researchers and undergraduates from disciplines such as microbiology, biochemistry, biotechnology, photochemistry and chemical engineering, interested in basic and applied sciences.

Microbial Dissimilatory Nitrate Reduction in Bioelectrochemical Systems with Electrode-respiring Biofilms and Wastewater Treatment Processes

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (951 download)

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Book Synopsis Microbial Dissimilatory Nitrate Reduction in Bioelectrochemical Systems with Electrode-respiring Biofilms and Wastewater Treatment Processes by : Hiroyuki Kashima

Download or read book Microbial Dissimilatory Nitrate Reduction in Bioelectrochemical Systems with Electrode-respiring Biofilms and Wastewater Treatment Processes written by Hiroyuki Kashima and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Some microorganisms dynamically alter their metabolic states in response to changes in the environmental conditions, such as availability of compatible electron donors and acceptors. A prominent example is nitrate, which is the most energetically favorable electron acceptor in the absence of oxygen and often dominantly controls microbial reactions taking place in anoxic systems. Solid electrodes present another substrate that can regulate microbial reactions, serving as an electron donor and/or electron acceptor for microbes capable of extracellular electron transfer (EET). Electrode-mediated microbial metabolisms are central in bioelectrochemical systems (BESs), an emerging technology with a variety of potential applications, including a novel experimental platform to study the dynamic change of microbial metabolisms with real-time monitoring under controlled conditions. A better characterization of microbial reactions associated with such key substrates has important implications to understand microbial reactions in anoxic environments and also developing biological processes that exploit relevant microbial metabolisms. This research investigated the capabilities and constraints of microbial metabolisms at the nexus of electrode- and nitrate-mediated respirations relevant to wastewater treatment processes. The facultative metabolic shift between anode electrode reduction and nitrate reduction was investigated in anode-reducing biofilms to study the effects of alternative metabolic options on exoelectrogenic biofilms in BESs. This has important implications not only to explain the fundamental ecology and performance of these systems, but also to develop reliable integrated nutrient removal strategies in BESs, which potentially involve nitrate that can support/induce alternative metabolisms. Using the exoelectrogenic nitrate reducer Geobacter metallireducens, the critical conditions controlling those alternative metabolisms were investigated in two-chamber, potentiostatically controlled BESs at various anode potentials, biofilm thicknesses, and nitrate concentrations. Results showed that anode-reducing biofilms preferentially reduced nitrate at all tested anode potentials (-150 to + 900 mV vs Standard Hydrogen Electrode) with a rapid metabolic shift, despite the fact that the biofilms had no prior nitrate exposure. The critical nitrate concentration that triggered a significant decrease in BES performance was a function of anode biofilm thickness but not anode potential. This indicates that these alternative metabolisms were controlled by the availability of nitrate, which is a function of nitrate concentration in the bulk solution and its diffusion into an anode-reducing biofilm. Coulombic recovery decreased as a function of nitrate dose due to electron-acceptor substrate competition, and nitrate-induced suspended biomass growth decreased the effluent quality. This nitrate-induced metabolic shift of anode-reducing biofilms was further investigated in the context of a shift between two different electrode-mediated metabolisms, electrode reduction and electrode oxidation. The characterization of metabolic shifts among different electrode-mediated reactions such as anode reduction and cathode oxidation is important to understand EETs in natural settings and also to develop stable BESs. This part of the research investigated the capability of anodically-grown G. metallireducens biofilms to shift from anode reduction to cathode oxidation. In tests with potentiostatically controlled graphite electrodes, G. metallireducens biofilms demonstrated a quick and alternative shift between anode reduction and cathode oxidation as a function of electrode potential and availability of the co-substrates nitrate and acetate. Cathodic electrode oxidation was coupled with nitrate reduction by metabolically active biofilms with a large cathodic current of ~ 3.68 A/m2. This metabolic shift from anode reduction to nitrate reduction took place quicker than the metabolic shift from ferric reduction to nitrate reduction. The presence of nitrate-reducing enzyme in the anode-reducing biofilms cells in the absence of nitrate, measured as specific in-vitro nitrate-reducing enzyme activity, was thought to enable such a quick metabolic shift to start nitrate reduction. Cyclic voltammetry and the analysis of its first derivative provided insights into the electron transfer mechanisms of these biofilms. Finally, the potential occurrence of dissimilatory nitrate reduction to ammonium (DNRA), a microbial nitrate-reducing metabolism that involves the sequential reduction of nitrate to nitrite and then nitrite to ammonium, was investigated in two full-scale wastewater treatment plants. DNRA in biological wastewater treatment systems and BESs is largely unstudied despite its potential impacts on system performance. This part of the research examined differential expression and diversity of nrfA, a key marker gene for DNRA, in activated sludge from full-scale domestic wastewater treatment plants with one designed for enhanced biological phosphorus removal (EBPR). Expression of nrfA, which encodes the penta-heme nitrite reductase NrfA catalyzing the nitrite ammonification step of DNRA, was observed in anaerobic and anoxic mixed liquor, but not in aerobic mixed liquor samples. The expression of nrfA under anaerobic and anoxic conditions suggests an overlooked potential for DNRA activity to occur in biological wastewater treatment systems. Some retrieved nrfA sequences were related to sequences associated with a microbial community with anammox activity, and the nrfA diversity in this wastewater treatment system differed from that observed in soil systems. Retrieved nrfA sequences both in genomic DNA and transcript samples were dominated by sequences associated with Actinobacteria, which are often abundant in EBPR processes. These results suggested potential occurrence of DNRA in wastewater activated sludge and encourage further studies in different types of wastewater treatment systems and with chemical tracer analyses to obtain comprehensive understanding of DNRA in this context. This research investigated dissimilatory nitrate reduction in electrode-respiring biofilms and full-scale wastewater treatment processes. Elucidating the dynamics of nitrate-dependent reactions of electrode-respiring G. metallireducens in the contexts of a competitive reaction to anode reduction and an alternative electrode-mediated reaction have implications for BES development. Moreover, the experimental frameworks that were developed to address those problems would be applicable to study other electrode-mediated microbial metabolisms. Findings of nrfA expression and its diversity in full-scale wastewater treatment processes indicated potential occurrences of DNRA in wastewater treatment processes, which would have implications for energy and chemical utilization in these systems, and broadened the representation of diversity in the rather limited nrfA database.

Microbial Biofilms

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Publisher : BoD – Books on Demand
ISBN 13 : 9535124358
Total Pages : 526 pages
Book Rating : 4.5/5 (351 download)

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Book Synopsis Microbial Biofilms by : Dharumadurai Dhanasekaran

Download or read book Microbial Biofilms written by Dharumadurai Dhanasekaran and published by BoD – Books on Demand. This book was released on 2016-07-13 with total page 526 pages. Available in PDF, EPUB and Kindle. Book excerpt: In the book Microbial Biofilms: Importance and applications, eminent scientists provide an up-to-date review of the present and future trends on biofilm-related research. This book is divided with four subdivisions as biofilm fundamentals, applications, health aspects, and their control. Moreover, this book also provides a comprehensive account on microbial interactions in biofilms, pyocyanin, and extracellular DNA in facilitating Pseudomonas aeruginosa biofilm formation, atomic force microscopic studies of biofilms, and biofilms in beverage industry. The book comprises a total of 21 chapters from valued contributions from world leading experts in Australia, Bulgaria, Canada, China, Serbia, Germany, Italy, Japan, the United Kingdom, the Kingdom of Saudi Arabia, Republic of Korea, Mexico, Poland, Portugal, and Turkey. This book may be used as a text or reference for everyone interested in biofilms and their applications. It is also highly recommended for environmental microbiologists, soil scientists, medical microbiologists, bioremediation experts, and microbiologists working in biocorrosion, biofouling, biodegradation, water microbiology, quorum sensing, and many other related areas. Scientists in academia, research laboratories, and industry will also find it of interest.